Insecticidal and Potato Growth Stimulation Activity of Bacillus thuringiensis kurstaki HD-1

Q4 Biochemistry, Genetics and Molecular Biology Mikrobiolohichnyi zhurnal Pub Date : 2023-01-17 DOI:10.15407/microbiolj84.04.009
S. López-Pazos, F.M. Chavarrio Cañas, A. C. Rojas Arias
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Abstract

Bacillus thuringiensis (Bt) produces Cry toxins against pest insects. Cry proteins are conformed by domains related to pore formation and recognition of protein receptors. Plant-induced systemic resistance (ISR) is triggered due to pest attack, it could be activated by Bacillus sp. Tecia solanivora (Ts) is a potato pest, susceptible to Cry1Ac and Cry1B proteins. This paper indicates the endorsement of Bt kurstaki HD-1 (BtkHD1) in relation to Ts control (Cry1Ac and Cry1B proteins), potato growth promotion, and plant ISR due to pests related to the BtkHD1-potato system. To ensure that ongoing quality control of BtkHD1 was maintained, crystal synthesis (microscopy), cry1 genes presence, and Cry protein production were checked. Bioassays Ts larvae and potato plantlets and an in silico analysis of the hybrid Cry1Ac-Cry1Ba protein and potato ISR related to the BtkHD1 infl uence were performed. Bioassay on Ts larvae shows an LC50 of 536 ng/cm2 of diet. A potato growth promotion assay revealed the effect of BtkHD1 on the length and dry weight of stems. The prospective analysis took into account relevant factors affecting the biological function of the hybrid protein focused on domain II. In silico identification of 15 BtkHD1 proteins and 68 potato proteins related to plant ISR due to pests was completed. This project serves to validation of toxicity on Ts larvae and potato growth effect based on BtkHD1, including a forward analysis of the hybrid Cry1Ac1-Cry1Ba1, and proteins associated with this strain and potato for eliciting plant ISR due to pests.
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苏云金芽孢杆菌HD-1的杀虫活性和促马铃薯生长活性
苏云金芽孢杆菌(Bt)产生抗虫毒素。Cry蛋白由与孔形成和蛋白质受体识别相关的结构域构成。植物诱导的系统抗性(ISR)是由虫害引起的,它可以被芽孢杆菌(Bacillus sp.)激活。Tecia solanivora (Ts)是马铃薯害虫,对Cry1Ac和Cry1B蛋白敏感。本文表明,Bt kurstaki HD-1 (BtkHD1)在控制Ts (Cry1Ac和Cry1B蛋白)、促进马铃薯生长以及BtkHD1-马铃薯系统相关害虫的植物ISR方面获得了认可。为了确保BtkHD1的持续质量控制,对晶体合成(显微镜)、cry1基因的存在和Cry蛋白的产生进行了检查。对Ts幼虫和马铃薯苗进行了生物测定,并对与BtkHD1影响相关的Cry1Ac-Cry1Ba杂交蛋白和马铃薯ISR进行了计算机分析。对其幼虫进行生物测定,LC50为536 ng/cm2。一项马铃薯生长促进试验揭示了BtkHD1对茎长和干重的影响。前瞻性分析考虑了影响杂交蛋白生物学功能的相关因素,主要集中在结构域II。完成了15个BtkHD1蛋白和68个马铃薯病虫害ISR相关蛋白的硅基鉴定。本项目旨在验证BtkHD1对Ts幼虫的毒性和马铃薯的生长效应,包括对杂种Cry1Ac1-Cry1Ba1的正向分析,以及该菌株与马铃薯相关蛋白引发植物因害虫而产生的ISR。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mikrobiolohichnyi zhurnal
Mikrobiolohichnyi zhurnal Medicine-Microbiology (medical)
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